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A novel gene OsAHL1 improves both drought avoidance and drought tolerance in rice

机译:一个新的基因OsAHL1可以提高水稻的抗旱性和抗旱性

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摘要

A novel gene, OsAHL1, containing an AT-hook motif and a PPC domain was identified through genome-wide profiling and analysis of mRNAs by comparing the microarray of drought-challenged versus normally watered rice. The results indicated OsAHL1 has both drought avoidance and drought tolerance that could greatly improve drought resistance of the rice plant. Overexpression of OsAHL1 enhanced multiple stress tolerances in rice plants during both seedling and panicle development stages. Functional studies revealed that OsAHL1 regulates root development under drought condition to enhance drought avoidance, participates in oxidative stress response and also regulates the content of chlorophyll in rice leaves. OsAHL1 specifically binds to the A/T rich sequence region of promoters or introns, and hence directly regulates the expression of many stress related downstream genes.
机译:通过比较干旱挑战的水稻和正常浇水的水稻的微阵列,通过全基因组分布和mRNA的分析,鉴定了一个包含AT钩基序和PPC结构域的新基因OsAHL1。结果表明,OsAHL1具有避免干旱和抗旱性,可以大大提高水稻的抗旱性。 OsAHL1的过表达增强了水稻在幼苗和穗发育阶段的多重胁迫耐受性。功能研究表明,OsAHL1调节干旱条件下的根系发育,从而增强避免干旱的能力,参与氧化应激反应,并调节水稻叶片中的叶绿素含量。 OsAHL1与启动子或内含子的富含A / T的序列区域特异性结合,因此直接调节许多与压力相关的下游基因的表达。

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